scholarly article | Q13442814 |
P819 | ADS bibcode | 2001PNAS...98.6548Q |
P356 | DOI | 10.1073/PNAS.111536798 |
P932 | PMC publication ID | 34390 |
P698 | PubMed publication ID | 11371622 |
P5875 | ResearchGate publication ID | 11965913 |
P2093 | author name string | Chakraborty AK | |
Groves JT | |||
Qi SY | |||
P2860 | cites work | Theory of dynamic critical phenomena | Q21709596 |
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Structure of the complex between human T-cell receptor, viral peptide and HLA-A2 | Q27733853 | ||
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Three-dimensional segregation of supramolecular activation clusters in T cells | Q28282528 | ||
A novel adaptor protein orchestrates receptor patterning and cytoskeletal polarity in T-cell contacts | Q28282813 | ||
T-cell activation and the dynamic world of rafts | Q33706813 | ||
Kinetics and mechanics of cell adhesion | Q33803045 | ||
Molecular analyses of the interactions between human NK receptors and their HLA ligands | Q33829853 | ||
Engagement of T cell receptor triggers its recruitment to low-density detergent-insoluble membrane domains | Q33889480 | ||
The immunological synapse and the actin cytoskeleton: molecular hardware for T cell signaling. | Q33958592 | ||
Membrane bending modulus and adhesion energy of wild-type and mutant cells of Dictyostelium lacking talin or cortexillins | Q34167179 | ||
High-affinity reactions between antigen-specific T-cell receptors and peptides associated with allogeneic and syngeneic major histocompatibility complex class I proteins | Q35918289 | ||
Visualization of CD2 interaction with LFA-3 and determination of the two-dimensional dissociation constant for adhesion receptors in a contact area. | Q36236485 | ||
ZAP-70 association with T cell receptor zeta (TCRzeta): fluorescence imaging of dynamic changes upon cellular stimulation | Q36288209 | ||
Visualizing the dynamics of T cell activation: intracellular adhesion molecule 1 migrates rapidly to the T cell/B cell interface and acts to sustain calcium levels | Q37397854 | ||
Lymphocyte responses and cytokines | Q40620203 | ||
Serial triggering of many T-cell receptors by a few peptide-MHC complexes | Q41346263 | ||
Making the T cell receptor go the distance: a topological view of T cell activation | Q41457016 | ||
Serial triggering of TCRs: a basis for the sensitivity and specificity of antigen recognition | Q41504944 | ||
Electrical manipulation of glycan-phosphatidyl inositol-tethered proteins in planar supported bilayers | Q41825887 | ||
Cellular determinants of the lateral mobility of neural cell adhesion molecules | Q42833539 | ||
Ligand recognition by alpha beta T cell receptors | Q46222293 | ||
Adhesive switching of membranes: experiment and theory | Q46740147 | ||
Lateral mobility of lipid analogues and GPI-anchored proteins in supported bilayers determined by fluorescent bead tracking | Q49155218 | ||
Membrane compartmentation is required for efficient T cell activation. | Q54132378 | ||
Costimulation: building an immunological synapse | Q57962343 | ||
Visualizing lymphocyte recognition | Q77421865 | ||
Affinity and kinetic analysis of the molecular interaction of ICAM-1 and leukocyte function-associated antigen-1 | Q77436897 | ||
A receptor/cytoskeletal movement triggered by costimulation during T cell activation | Q77696385 | ||
P433 | issue | 12 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 6548-6553 | |
P577 | publication date | 2001-05-22 | |
P1433 | published in | Proceedings of the National Academy of Sciences of the United States of America | Q1146531 |
P1476 | title | Synaptic pattern formation during cellular recognition | |
P478 | volume | 98 |
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Q73253595 | Adhesion-induced phase separation of multiple species of membrane junctions |
Q58046629 | Analysis of pattern formation and phase separation in the immunological synapse |
Q35121320 | Analysis of shape, fluctuations, and dynamics in intermembrane junctions |
Q35606770 | Analysis of two-dimensional dissociation constant of laterally mobile cell adhesion molecules |
Q34726206 | Assembly of the immunological synapse for T cells and NK cells |
Q31036445 | B cell activation triggered by the formation of the small receptor cluster: a computational study |
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Q28596891 | Biophysically inspired model for functionalized nanocarrier adhesion to cell surface: roles of protein expression and mechanical factors |
Q36030001 | Block Liposome and Nanotube Formation is a General Phenomenon of Two-Component Membranes Containing Multivalent Lipids |
Q37110160 | Block liposomes from curvature-stabilizing lipids: connected nanotubes, -rods, or -spheres. |
Q33987379 | Boltzmann energy-based image analysis demonstrates that extracellular domain size differences explain protein segregation at immune synapses |
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Q98898242 | Cadherin clusters stabilized by a combination of specific and nonspecific cis-interactions |
Q38682295 | Catch Bonds at T Cell Interfaces: Impact of Surface Reorganization and Membrane Fluctuations. |
Q57364542 | Cell Surface Models on Polymer Supports – From Artificial Membranes to Native Cells |
Q34862177 | Cell adhesion and polarity during immune interactions |
Q57364576 | Chapter 4 Membrane Adhesion and Domain Formation |
Q35723488 | Chemical reactions directed Peptide self-assembly. |
Q30489343 | Cluster size regulates protein sorting in the immunological synapse |
Q38853745 | Computational immuno-biology for organ transplantation and regenerative medicine. |
Q51015811 | Contact time periods in immunological synapse. |
Q37897681 | Continuum simulations of biomembrane dynamics and the importance of hydrodynamic effects |
Q34199998 | Cooperativity between trans and cis interactions in cadherin-mediated junction formation |
Q34895271 | Correlation of a dynamic model for immunological synapse formation with effector functions: two pathways to synapse formation. |
Q53585559 | Curvature and spatial organization in biological membranes |
Q79186670 | Cutting Edge: Dendritic Cell Actin Cytoskeletal Polarization during Immunological Synapse Formation Is Highly Antigen-Dependent |
Q40214459 | Differential segregation in a cell-cell contact interface: the dynamics of the immunological synapse |
Q36983760 | Direct single molecule measurement of TCR triggering by agonist pMHC in living primary T cells |
Q38309176 | Dynamic membrane patterning, signal localization and polarity in living cells. |
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Q34184760 | Dynamics of pinned membranes with application to protein diffusion on the surface of red blood cells |
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Q39654323 | Early T-cell activation biophysics. |
Q51729856 | Effective membrane model of the immunological synapse. |
Q33392668 | Effects of intracellular calcium and actin cytoskeleton on TCR mobility measured by fluorescence recovery |
Q34187260 | Effects of the geometry of the immunological synapse on the delivery of effector molecules. |
Q27317712 | Elastohydrodynamics and Kinetics of Protein Patterning in the Immunological Synapse |
Q53585575 | Electrostatically Driven Spatial Patterns in Lipid Membrane Composition |
Q41588540 | Enzymatic self-assembly of nanostructures for theranostics |
Q34184944 | Equilibrium thermodynamics of cell-cell adhesion mediated by multiple ligand-receptor pairs |
Q28208110 | Exclusion of CD43 from the immunological synapse is mediated by phosphorylation-regulated relocation of the cytoskeletal adaptor moesin |
Q64249165 | Extracellular Vesicles: Delivery Vehicles of Myokines |
Q34453049 | FERMing up the synapse. |
Q27342631 | Force generation upon T cell receptor engagement |
Q43103197 | Formation and analysis of topographical domains between lipid membranes tethered by DNA hybrids of different lengths |
Q34612487 | Formation and function of the immunological synapse |
Q34188423 | Frequency encoding of T-cell receptor engagement dynamics in calcium time series. |
Q33263254 | Geometrically repatterned immunological synapses uncover formation mechanisms |
Q34553067 | How and why does the immunological synapse form? Physical chemistry meets cell biology |
Q40674024 | Human CD30: structural implications from epitope mapping and modeling studies |
Q64090130 | Hydrodynamics of transient cell-cell contact: The role of membrane permeability and active protrusion length |
Q35005898 | Imaging immune surveillance by T cells and NK cells |
Q35005860 | Imaging of T-cell interactions with antigen presenting cells in culture and in intact lymphoid tissue. |
Q44066636 | Immature CD4(+)CD8(+) thymocytes form a multifocal immunological synapse with sustained tyrosine phosphorylation |
Q36269271 | Implicit solvent simulation models for biomembranes |
Q46036252 | In silico models for cellular and molecular immunology: successes, promises and challenges. |
Q40696454 | In the immune synapse, ZAP-70 controls T cell polarization and recruitment of signaling proteins but not formation of the synaptic pattern. |
Q37580455 | Insights into the initiation of TCR signaling |
Q28472161 | Integrin clustering is driven by mechanical resistance from the glycocalyx and the substrate |
Q35005865 | Interface accumulation of receptor/ligand couples in lymphocyte activation: methods, mechanisms, and significance |
Q47774296 | Interplay between membrane elasticity and active cytoskeleton forces regulates the aggregation dynamics of the immunological synapse. |
Q47559673 | Irreversible thermodynamics of curved lipid membranes |
Q47607403 | LFA-1/ICAM-1 interaction lowers the threshold of B cell activation by facilitating B cell adhesion and synapse formation |
Q41828407 | Landscape of finite-temperature equilibrium behaviour of curvature-inducing proteins on a bilayer membrane explored using a linearized elastic free energy model |
Q42278090 | Ligand detection and discrimination by spatial relocalization: A kinase-phosphatase segregation model of TCR activation |
Q78294124 | Lighting up TCR takes advantage of serial triggering |
Q33999382 | Line tension and stability of domains in cell-adhesion zones mediated by long and short receptor-ligand complexes |
Q40121326 | Loss of N-terminal charged residues of mouse CD3 epsilon chains generates isoforms modulating antigen T cell receptor-mediated signals and T cell receptor-CD3 interactions |
Q30477773 | Low T cell receptor expression and thermal fluctuations contribute to formation of dynamic multifocal synapses in thymocytes |
Q37244224 | Macroscopic domain formation during cooling in the platelet plasma membrane: an issue of low cholesterol content |
Q30538103 | Manipulating the lateral diffusion of surface-anchored EGF demonstrates that receptor clustering modulates phosphorylation levels |
Q40310228 | Mathematical Modeling of Synaptic Patterns |
Q35790365 | Mathematical and computational models of immune-receptor signalling |
Q35843813 | Mechanical modulation of receptor-ligand interactions at cell-cell interfaces |
Q30480910 | Mechanisms for segregating T cell receptor and adhesion molecules during immunological synapse formation in Jurkat T cells |
Q30479513 | Mechanisms of B-cell synapse formation predicted by Monte Carlo simulation. |
Q37263225 | Mechanisms of receptor/coreceptor-mediated entry of enveloped viruses |
Q34502851 | Membrane domains and the immunological synapse: keeping T cells resting and ready. |
Q36685903 | Micropatterned supported membranes as tools for quantitative studies of the immunological synapse |
Q24814731 | Modeling T cell antigen discrimination based on feedback control of digital ERK responses |
Q41865904 | Modeling of B cell Synapse Formation by Monte Carlo Simulation Shows That Directed Transport of Receptor Molecules Is a Potential Formation Mechanism |
Q36990086 | Molecular mechanisms in signal transduction at the membrane |
Q34392372 | Molecular topography imaging by intermembrane fluorescence resonance energy transfer |
Q36783741 | Monte Carlo study of single molecule diffusion can elucidate the mechanism of B cell synapse formation |
Q56931674 | Multiple stalk formation as a pathway of defect-induced membrane fusion |
Q52563513 | Multivalent Binding of a Ligand-Coated Particle: Role of Shape, Size, and Ligand Heterogeneity. |
Q43284368 | NK cells from tuberculous pleurisy express high ICAM-1 levels and exert stimulatory effect on local T cells |
Q38050488 | Non-catalytic tyrosine-phosphorylated receptors |
Q46802117 | Nucleation of membrane adhesions |
Q40307387 | Pattern formation during T-cell adhesion. |
Q33849372 | Perspectives for computer modeling in the study of T cell activation |
Q36271727 | Polymer-supported membranes as models of the cell surface |
Q36827589 | Pre-transition effects mediate forces of assembly between transmembrane proteins |
Q37883756 | Probing mechanical principles of focal contacts in cell-matrix adhesion with a coupled stochastic-elastic modelling framework. |
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Q30493983 | Single-molecule microscopy reveals plasma membrane microdomains created by protein-protein networks that exclude or trap signaling molecules in T cells |
Q33680191 | Soft matrices suppress cooperative behaviors among receptor-ligand bonds in cell adhesion |
Q57362342 | Solid supported lipid bilayers: From biophysical studies to sensor design |
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Q36957644 | Spatial organization and signal transduction at intercellular junctions |
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Q38171536 | Structural impact of cations on lipid bilayer models: nanomechanical properties by AFM-force spectroscopy. |
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Q35189593 | Systems biology in immunology: a computational modeling perspective. |
Q35893938 | T Cells Integrate Local and Global Cues to Discriminate between Structurally Similar Antigens |
Q35971606 | T cell activation requires mitochondrial translocation to the immunological synapse |
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